A simple analytical model for predicting locomotive ground reaction forces
Opolz, M. D.; Moshage, S. G.; McCoy, A. M.; Kersh, M. E.
Show abstract
Equine models are useful in biomechanics research of locomotion due to their similarity in musculoskeletal tissue to humans, their athletic nature, and rapid skeletal development which permits ontogenetic studies. However, a continuing challenge in musculoskeletal models for large animal biomechanics is measuring the ground reaction force (GRF) during locomotion. This gap has resulted in a lack of reporting of gait measures such as joint torques. Here we propose an analytical method for predicting ground reaction forces in foals (growing horses) based on the Froude number. Motion capture, GRF, and subject mass data during walking and trotting gaits were collected longitudinally. To account for differences in subject size, we calculated the dimensionless Froude number (Fr=v2/(g*l)). The walk-trot transition speed occurred near Fr=0.5, v=1.75-2.15 m/s and was consistent for all evaluated ages. Of the analytical regression models tested, linear regression models had the best performance for predicting vertical GRF data in foals with an average absolute error percent of 7.97% during trotting and 2.39% during walking, compared to a non-linear logistic model with an error of 8.38%. The model was converted to Python and implemented to predict GRF data for foals using the subject velocity and limb length as input. Our resulting analytical model can be used to estimate the GRF profile of equine gait enabling comparative studies of locomotion.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Quantifying mechanical loading and elastic strain energy of the human Achilles tendon during walking and running 96%
- Joint contact forces during barefoot, minimal and conventional shod running are highly individual 95%
- Muscle activity of cutting manoeuvres and soccer inside passing suggests an increased groin injury risk during these movements 95%
Similar papers in this journal
- Morphology of proximal and distal human semitendinosus compartments and the effects of distal tendon harvesting for anterior cruciate ligament reconstruction 92%
- APPENDICULAR MORPHOLOGY AND LOCOMOTOR PERFORMANCE OF TWO MORPHOTYPES OF CONTINENTAL ANOLES: Anolis heterodermus AND Anolis tolimensis 90%
- Growth and development of trabecular structure in the calcaneus of Japanese macaques (Macaca fuscata) reflects locomotor behavior, life-history, and neuromuscular development. 89%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.